Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation

The paper presents the numerical modeling of large deflections of a flat textile structure subjected to a constant force acting on the free end. It was assumed that the examined structure is inextensible. The effect of the structure's own weight was also taken into account. In order to solve th...

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Main Author: Szablewski Piotr
Format: Article
Language:English
Published: Sciendo 2020-08-01
Series:Autex Research Journal
Subjects:
Online Access:https://doi.org/10.2478/aut-2020-0033
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spelling doaj-e583e04016444890ad8a82bcc008d0ff2021-09-06T19:41:29ZengSciendoAutex Research Journal2300-09292020-08-0121110811410.2478/aut-2020-0033Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem SimulationSzablewski Piotr0Department of Mechanical Engineering, Informatics and Chemistry of Polymer Materials, Lodz University of Technology, Lodz, PolandThe paper presents the numerical modeling of large deflections of a flat textile structure subjected to a constant force acting on the free end. It was assumed that the examined structure is inextensible. The effect of the structure's own weight was also taken into account. In order to solve the problem, the flat textile structure was modeled using the heavy elastica theory. An important element of the analysis involves taking into account the variable bending rigidity of the examined textile structure along its length, which is often found in this type of products. The function of variable bending rigidity was assumed in advance. Numerical calculations were carried out in the Mathematica environment using the shooting method for the boundary value problem. The obtained results were verified using the finite element method.https://doi.org/10.2478/aut-2020-0033textile structurelarge deflectionheavy elasticavariable bending rigiditynumerical methodsfinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Szablewski Piotr
spellingShingle Szablewski Piotr
Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
Autex Research Journal
textile structure
large deflection
heavy elastica
variable bending rigidity
numerical methods
finite element method
author_facet Szablewski Piotr
author_sort Szablewski Piotr
title Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
title_short Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
title_full Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
title_fullStr Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
title_full_unstemmed Numerical Analysis of Large Deflections of a Flat Textile Structure with Variable Bending Rigidity and Verification of Results Using Fem Simulation
title_sort numerical analysis of large deflections of a flat textile structure with variable bending rigidity and verification of results using fem simulation
publisher Sciendo
series Autex Research Journal
issn 2300-0929
publishDate 2020-08-01
description The paper presents the numerical modeling of large deflections of a flat textile structure subjected to a constant force acting on the free end. It was assumed that the examined structure is inextensible. The effect of the structure's own weight was also taken into account. In order to solve the problem, the flat textile structure was modeled using the heavy elastica theory. An important element of the analysis involves taking into account the variable bending rigidity of the examined textile structure along its length, which is often found in this type of products. The function of variable bending rigidity was assumed in advance. Numerical calculations were carried out in the Mathematica environment using the shooting method for the boundary value problem. The obtained results were verified using the finite element method.
topic textile structure
large deflection
heavy elastica
variable bending rigidity
numerical methods
finite element method
url https://doi.org/10.2478/aut-2020-0033
work_keys_str_mv AT szablewskipiotr numericalanalysisoflargedeflectionsofaflattextilestructurewithvariablebendingrigidityandverificationofresultsusingfemsimulation
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